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The possible magnetic torus in stellar interior

机译:恒星内部可能存在磁环

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摘要

Various possibilities of the structure of the magnetic field, which is driven by turbulent dynamo mechanisms, in the stellar convection zone are analysed, putting an emphasis on the cross-helicity dynamo effect. A relation between the cross-helicity dynamo and rotation is discussed. An evaluation is made for the cross-helicity-driven magnetic field, and the influence of the rotation is illustrated. A case in which the convection zone is lying just below the surface (like the solar convection zone) is analysed. The toroidal magnetic field structure is predicted to exist in stellar interior, and the analogy to laboratory toroidal plasmas is explained. The interior magnetic field is divided into two classes. One is dominated by the poloidal–radial component: activity may be seen near the polar region for this case. In the other, the magnetic field is dominated by the toroidal magnetic field as tokamaks in laboratory experiments.
机译:分析了恒流对流区中由湍流发电机机制驱动的磁场结构的各种可能性,重点放在了横螺旋发电机效应上。讨论了横螺旋发电机与旋转之间的关系。对跨螺旋线驱动的磁场进行了评估,并说明了旋转的影响。分析了对流区恰好位于表面下方的情况(类似于太阳对流区)。预计环形磁场结构将存在于恒星内部,并解释与实验室环形等离子体的类比。内部磁场分为两类。一种是由极小数-径向分量主导的:在这种情况下,可以在极地区域附近看到活动。另一方面,在实验室实验中,磁场由环形磁场控制,就像托卡马克一样。

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